首页> 美国卫生研究院文献>Journal of Virology >A Single Amino Acid Substitution in the West Nile Virus Nonstructural Protein NS2A Disables Its Ability To Inhibit Alpha/Beta Interferon Induction and Attenuates Virus Virulence in Mice
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A Single Amino Acid Substitution in the West Nile Virus Nonstructural Protein NS2A Disables Its Ability To Inhibit Alpha/Beta Interferon Induction and Attenuates Virus Virulence in Mice

机译:西尼罗河病毒非结构蛋白NS2A中的单个氨基酸替代禁用其抑制小鼠α/β干扰素诱导的能力并减弱小鼠的病毒毒力。

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摘要

Alpha/beta interferons (IFN-α/β) are key mediators of the innate immune response against viral infection. The ability of viruses to circumvent IFN-α/β responses plays a crucial role in determining the outcome of infection. In a previous study using subgenomic replicons of the Kunjin subtype of West Nile virus (WNVKUN), we demonstrated that the nonstructural protein NS2A is a major inhibitor of IFN-β promoter-driven transcription and that a single amino acid substitution in NS2A (Ala30 to Pro [A30P]) dramatically reduced its inhibitory effect (W. J. Liu, H. B. Chen, X. J. Wang, H. Huang, and A. A. Khromykh, J. Virol. >78:12225-12235). Here we show that incorporation of the A30P mutation into the WNVKUN genome results in a mutant virus which elicits more rapid induction and higher levels of synthesis of IFN-α/β in infected human A549 cells than that detected following wild-type WNVKUN infection. Consequently, replication of the WNVKUNNS2A/A30P mutant virus in these cells known to be high producers of IFN-α/β was abortive. In contrast, both the mutant and the wild-type WNVKUN produced similar-size plaques and replicated with similar efficiency in BHK cells which are known to be deficient in IFN-α/β production. The mutant virus was highly attenuated in neuroinvasiveness and also attenuated in neurovirulence in 3-week-old mice. Surprisingly, the mutant virus was also partially attenuated in IFN-α/βγ receptor knockout mice, suggesting that the A30P mutation may also play a role in more efficient activation of other antiviral pathways in addition to the IFN response. Immunization of wild-type mice with the mutant virus resulted in induction of an antibody response of similar magnitude to that observed in mice immunized with wild-type WNVKUN and gave complete protection against challenge with a lethal dose of the highly virulent New York 99 strain of WNV. The results confirm and extend our previous original findings on the role of the flavivirus NS2A protein in inhibition of a host antiviral response and demonstrate that the targeted disabling of a viral mechanism for evading the IFN response can be applied to the development of live attenuated flavivirus vaccine candidates.
机译:α/β干扰素(IFN-α/β)是针对病毒感染的先天免疫应答的关键介体。病毒规避IFN-α/β反应的能力在决定感染的结果中起着至关重要的作用。在先前使用西尼罗河病毒Kunjin亚型的亚基因组复制子(WNVKUN)进行的研究中,我们证明了非结构蛋白NS2A是IFN-β启动子驱动的转录的主要抑制剂,并且在NS2A中存在单个氨基酸取代(Ala30至Pro [A30P])大大降低了其抑制作用(WJ Liu,HB HB Chen,XJ Wang,H。Huang和AA Khromykh,J。Virol。> 78: 12225-12235)。在这里,我们显示将A30P突变整合到WNVKUN基因组中会导致突变病毒,该突变病毒与野生型WNVKUN感染后相比,在感染的人A549细胞中引起更快的诱导和更高水平的IFN-α/β合成。因此,WNVKUNNS2A / A30P突变病毒在这些细胞中的复制是众所周知的,这些细胞是IFN-α/β的高生产者,但这种复制是失败的。相反,突变体和野生型WNVKUN均产生大小相似的噬菌斑,并在已知缺乏IFN-α/β产生的BHK细胞中以相似的效率复制。在3周龄的小鼠中,突变病毒的神经侵袭力高度减弱,神经毒力也减弱。出人意料的是,突变型病毒在IFN-α/βγ受体敲除小鼠中也被部分减毒,这表明A30P突变除了干扰素应答之外,还可能在其他抗病毒途径的更有效激活中起作用。用突变病毒对野生型小鼠进行免疫后,诱导的抗体反应与在野生型WNVKUN免疫的小鼠中观察到的抗体反应具有相似的强度,并通过致命剂量的高毒力New York 99株提供了全面的保护,使其免受攻击。 WNV。该结果证实并扩展了我们先前关于黄病毒NS2A蛋白在抑制宿主抗病毒反应中的作用的原始发现,并证明了针对避免IFN应答的病毒机制的靶向丧失可用于减毒黄病毒活疫苗的开发候选人。

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